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Systemic desensitization through TRPA1 channels by capsazepine and mustard oil - a novel strategy against inflammation and pain

机译:辣椒碱和芥末油通过TRPA1通道引起的系统脱敏-对抗炎症和疼痛的新策略

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摘要

We demonstrate a novel dual strategy against inflammation and pain through body-wide desensitization of nociceptors via TRPA1. Attenuation of experimental colitis by capsazepine (CPZ) has long been attributed to its antagonistic action on TRPV1 and associated inhibition of neurogenic inflammation. In contrast, we found that CPZ exerts its anti-inflammatory effects via profound desensitization of TRPA1. Micromolar CPZ induced calcium influx in isolated dorsal root ganglion (DRG) neurons from wild-type (WT) but not TRPA1-deficient mice. CPZ-induced calcium transients in human TRPA1-expressing HEK293t cells were blocked by the selective TRPA1 antagonists HC 030031 and A967079 and involved three cysteine residues in the N-terminal domain. Intriguingly, both colonic enemas and drinking water with CPZ led to profound systemic hypoalgesia in WT and TRPV1−/− but not TRPA1−/− mice. These findings may guide the development of a novel class of disease-modifying drugs with anti-inflammatory and anti-nociceptive effects.
机译:我们展示了通过TRPA1对人体进行伤害感受器全敏脱敏的新型抗炎和止痛双重策略。长期以来,辣椒碱(CPZ)对实验性结肠炎的缓解作用一直归因于其对TRPV1的拮抗作用以及对神经源性炎症的相关抑制作用。相反,我们发现CPZ通过TRPA1的高度脱敏发挥其抗炎作用。微摩尔CPZ诱导来自野生型(WT)而非TRPA1缺陷型小鼠的孤立背根神经节(DRG)神经元中的钙内流。 CPZ诱导的表达人TRPA1的HEK293t细胞中的钙瞬变被选择性TRPA1拮抗剂HC 030031和A967079阻断,并在N端结构域涉及三个半胱氨酸残基。有趣的是,CPZ引起的结肠灌肠和饮用水都导致了WT和TRPV1 -/-小鼠的全身性痛觉过敏,而TRPA1 -/-小鼠却没有。这些发现可能指导开发具有抗炎和抗伤害感受作用的新型疾病缓解药物。

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